Waterlogged wooden artifacts represent an important historical legacy of our past. They are very fragile, especially due to the severe phenomenon of acidification that may occur in the presence of acid precursors. To date, a satisfactory solution for the deacidification of ancient wood on a large scale has still not been found. In this paper, we propose, for the first time, eco-friendly curative and preventive treatments using nanoparticles (NPs) of earth alkaline hydroxides dispersed in water and produced on a large scale. We present the characterization of the NPs (by X-ray diffraction, atomic-force and electron microscopy, and small-angle neutron scattering), together with the study of the deacidification efficiency of our treatments. We demonstrate that all our treatments are very effective for both curative and preventive aims, able to assure an almost neutral or slightly alkaline pH of the treated woods. Furthermore, the use of water as a solvent paves the way for large-scale and eco-friendly applications which avoid substances that are harmful for the environment and for human health.

Sustainable Nanotechnologies for Curative and Preventive Wood Deacidification Treatments: An Eco-Friendly and Innovative Approach

Mondelli Claudia
Ultimo
2020

Abstract

Waterlogged wooden artifacts represent an important historical legacy of our past. They are very fragile, especially due to the severe phenomenon of acidification that may occur in the presence of acid precursors. To date, a satisfactory solution for the deacidification of ancient wood on a large scale has still not been found. In this paper, we propose, for the first time, eco-friendly curative and preventive treatments using nanoparticles (NPs) of earth alkaline hydroxides dispersed in water and produced on a large scale. We present the characterization of the NPs (by X-ray diffraction, atomic-force and electron microscopy, and small-angle neutron scattering), together with the study of the deacidification efficiency of our treatments. We demonstrate that all our treatments are very effective for both curative and preventive aims, able to assure an almost neutral or slightly alkaline pH of the treated woods. Furthermore, the use of water as a solvent paves the way for large-scale and eco-friendly applications which avoid substances that are harmful for the environment and for human health.
2020
Istituto Officina dei Materiali - IOM -
Inglese
10
9
16
Esperti anonimi
wooden samples deacidification
eco-friendly treatments
Mg(OH)(2)nanoparticles
Ca(OH)(2)nanoparticles
SANS
Quest’articolo mi ha portato a un’intervista in diretta di circa 20 min sulla RADIO 1 RAI (trasmissione RADAR) ed è stato oggetto di rassegne stampa e comunicati su importanti giornali rivolti al grande pubblico come Le Scienze, Popular Science (USA), Current Archaeology, Bild der wissensschaft, etc raggiungendo milioni di lettori. Questo lavoro è stato oggetto anche di un Comunicato Stampa del CNR e dell’Institut Laue Langevin. Inoltre è stato proposto come possibile candidato per il premio Nanomaterials 2022. Best paper Award Per premiare il migliore articolo pubblicato in 2020. Questo è un lavoro ad alto impatto sulla società (conservazione del patrimonio unico dei relitti marini) e a trasferimento tecnologico di tecniche altamente innovative (spin off universitario dell’Un. AQ). Lavoro d’importanza per l’industria delle nanoparticelle che muove circa 6 miliardi di dollari l’anno. Lavoro altamente interdisciplinare necessitando competenze in fisica, chimica, restauro, archeologia,biologia e storia.
Internazionale
8
info:eu-repo/semantics/article
262
Taglieri, Giuliana; Daniele, Valeria; Macera, Ludovico; Schweins, Ralf; Zorzi, Sandro; Capron, Marie; Chaumat, Gilles; Mondelli, Claudia
01 Contributo su Rivista::01.01 Articolo in rivista
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/381857
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